Temperature detection device based on concrete standard curing room
By using slide rails and driving components in the temperature detection device to realize multiple movement detection of the temperature sensor, and adjusting the detection angle of the sensor by adjusting the components, the problem that sensors cannot perform multiple movement detection and angle adjustment in the prior art is solved, and the monitoring accuracy and practicality are improved.
Patent Information
- Application Number
- CN202421770670.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-25
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-07-25
AI Technical Summary
In the prior art, the temperature sensor cannot perform multiple movement detection and angle adjustment, resulting in poor practicality.
A temperature detection device based on a concrete standard room is designed, and multiple movement detection of the temperature sensor is realized using slide rails and driving components, and the detection angle of the sensor is adjusted by adjusting the components.
Multiple movement detection and angle adjustment of the temperature sensor are realized, and the monitoring accuracy and practicality of temperatures at each position in the benchmark room are improved.
Smart Images

Figure CN223050745U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of temperature detection in standard curing rooms, in particular to a temperature detection device based on a concrete standard curing room. Background Art
[0002] A concrete standard curing room refers to an indoor environment built with concrete for curing concrete samples or components. In the concrete standard curing room, temperature, humidity and other environmental factors can be controlled to provide optimal curing conditions to ensure that the strength and durability of concrete materials meet the design requirements.
[0003] Concrete is sensitive to temperature changes in the standard curing room. Too high or too low temperature will cause unstable conditions for concrete samples. Therefore, a temperature detection device based on a concrete standard curing room is needed for temperature detection. For example, the Chinese patent publication number "CN220381503U" in the prior art discloses a temperature and humidity control system based on a concrete standard curing room, including a standard curing room, a humidifying mechanism, a heating mechanism and a ventilation mechanism. The beneficial effects of the utility model are as follows: the utility model controls the operation of an alarm, a water pump, a blower, a heating wire and a motor by setting a microcomputer, can flexibly control the corresponding components to operate according to the actual use requirements of the standard curing room, avoids the cumbersome operation of personnel, and improves the intelligence of the temperature and humidity control system; when the temperature sensor and the humidity sensor detect that the temperature and humidity inside the standard curing room are unbalanced, the signals are first sent to the microcomputer, the microcomputer analyzes and processes the information through the internal module, and then controls the alarm to sound an alarm. When the humidity sensor and the temperature sensor detect that the humidity and temperature in the standard curing room do not meet the standards, the signals are respectively sent to the microcomputer, and then the water pump and the blower are controlled to operate to realize the adjustment of the temperature and humidity in the standard curing room.
[0004] The temperature detection device of some concrete standard curing rooms detects the temperature in the standard curing room through a temperature sensor. However, in specific operations, considering that the temperature sensors in similar standard curing rooms are fixedly installed, this results in that the temperature sensors can only be fixed at the same position for temperature detection, but cannot perform multi-point mobile detection. In addition, the angle of the temperature sensors cannot be adjusted, and the practicability is poor. Summary of the Utility Model
[0005] The purpose of the utility model is to solve the above-mentioned disadvantages in the prior art that multi-point mobile detection cannot be performed and the angle cannot be adjusted, and to propose a temperature detection device based on a concrete standard curing room.
[0006] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0007] A temperature detection device based on a concrete standard curing room is designed, comprising a curing frame placed in the standard curing room, temperature regulating parts are arranged on both sides of the standard curing room, and a temperature sensor is arranged on the top of the standard curing room through a slide rail above the curing frame, and a driving component is arranged on the slide rail, and the driving component is used to drive the temperature sensor to perform mobile monitoring at multiple locations;
[0008] Wherein, an adjustment component is provided at the bottom of the slide rail, and the adjustment component is used to adjust the detection angle of the temperature sensor.
[0009] Furthermore, the temperature regulating component includes an exhaust fan and a blower. An exhaust slot is opened on the wall of the standard curing room, and the exhaust fan is fixedly installed on the exhaust slot through a fixing frame. The blower is fixedly installed on the other side wall of the standard curing room. The output end of the blower is connected to a heating box, and the other end of the heating box is connected to an air outlet pipe.
[0010] Furthermore, the driving assembly includes a rack fixedly mounted on the top of the slide rail, a movable seat is slidably connected to the bottom of the slide rail, a first motor is fixedly mounted on the top of the movable seat, a driving gear is fixedly mounted on the shaft end of the first motor, and the driving gear meshes and rotates with the rack.
[0011] Furthermore, the adjustment component includes an installation groove opened inside one side of the movable seat, the bottom of the installation groove is penetrated by an avoidance groove, and the inner side thereof is opened with a sliding groove, a swing arm is provided in the installation groove, the two sides of the top of the swing arm extend upward to form a recessed portion, and a guide portion is provided at the bottom, and the bottom of the swing arm is slidably connected to the avoidance groove through a first rotating shaft.
[0012] Furthermore, the swing arm is fixedly installed with a limit column below the recessed portion, and the limit column is slidably connected in the slide groove. A cam is provided in the mounting groove. The cam has a triangular structure and is located at the corner and is rotatably connected to the mounting groove through a second rotating shaft. The cam is rotatably connected in the recessed portion and can contact the inner wall of the recessed portion.
[0013] Furthermore, a second motor is fixedly installed in the installation groove through the accommodating groove, the shaft end of the second motor is fixedly connected to the second rotating shaft, the bottom of the movable seat is rotatably connected to the installation seat through a mounting frame, the bottom of the installation seat is fixedly installed with the temperature sensor, and a guide groove is opened at the top, and the guide part is movably connected in the guide groove.
[0014] A temperature detection device based on a concrete standard curing room proposed by the present utility model has the following beneficial effects: Through the action of the driving component, the position of the temperature sensor can be changed, enabling the temperature sensor to perform mobile detections at multiple locations, facilitating the monitoring of the temperature at various positions in the standard curing room. Moreover, through the adjustment component, the detection angle of the temperature sensor can also be adjusted. By adjusting the angle of the sensor, it is possible to ensure that the sensor is aligned with the target area to be measured, thereby more accurately capturing the temperature of the target area, and it has strong practicality. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a schematic structural diagram of the present utility model;
[0016] Figure 2 is a schematic structural diagram of the adjustment component of the present utility model;
[0017] Figure 3 is a schematic structural diagram of the mounting seat of the present utility model.
[0018] In the figure: 1, standard curing room; 2, curing rack; 3, temperature adjustment member; 31, exhaust fan; 32, blower; 33, fixing rack; 34, heating box; 4, slide rail; 5, temperature sensor; 6, driving component; 61, rack; 62, movable seat; 63, first motor; 64, driving gear; 7, adjustment component; 71, mounting groove; 72, avoidance groove; 73, chute; 74, swing arm; 741, recessed part; 742, guiding part; 743, limiting column; 75, first rotating shaft; 76, cam; 761, second rotating shaft; 77, second motor; 78, mounting frame; 79, mounting seat; 791, guiding groove. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0019] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments.
[0020] Refer to Figures 1-3 , a temperature detection device based on a concrete standard curing room, including a curing rack 2 placed in the standard curing room 1. Temperature adjustment members 3 are provided on both sides of the standard curing room 1, and a temperature sensor 5 is provided above the curing rack 2 at the top thereof through a slide rail 4. A driving component 6 is provided on the slide rail 4, and the driving component 6 is used to drive the temperature sensor 5 to perform mobile detections at multiple locations;
[0021] Among them, an adjustment component 7 is provided at the bottom of the slide rail 4, and the adjustment component 7 is used to adjust the detection angle of the temperature sensor 5.
[0022] It is worth mentioning that the position of the temperature sensor 5 can be changed by the action of the driving component 6, so that the temperature sensor 5 can perform multi-point movement detection, which is convenient for monitoring the temperature at various positions in the standard curing room 1;
[0023] Among them, the advantage of adjusting the detection angle of the temperature sensor 5 is that by adjusting the angle of the temperature sensor 5, it can be ensured that the temperature sensor 5 is aligned with the target area to be measured, so that the temperature of the target area can be captured more accurately, and the temperature sensor 5 can be prevented from being interfered by other heat sources or environmental factors, such as the influence of solar radiation.
[0024] Furthermore, the temperature adjusting member 3 includes an exhaust fan 31 and a blower 32. An exhaust slot is provided in the wall of the standard curing room 1, and the exhaust fan 31 is fixedly installed at the exhaust slot through a fixing frame 33. The blower 32 is fixedly installed on the other side wall of the standard curing room 1. The output end of the blower 32 is connected to a heating box 34, and the other end of the heating box 34 is connected to an air outlet pipe.
[0025] It is not difficult for those skilled in the art to know that a control unit also needs to be provided in the standard curing room 1. The exhaust fan 31, the blower 32, and the heating box 34 are all electrically connected to the control unit. The temperature in the standard curing room 1 is adjusted by using the exhaust fan 31 and the blower 32, and the exhaust fan 31 is driven by a motor.
[0026] Furthermore, the driving component 6 includes a rack 61 fixedly installed on the top of the slide rail 4. A movable seat 62 is slidably connected to the bottom of the slide rail 4. A first motor 63 is fixedly installed on the top of the movable seat 62. A driving gear 64 is fixedly installed at the shaft end of the first motor 63, and the driving gear 64 meshes and rotates with the rack 61.
[0027] The specific operation is that the first motor 63 drives the driving gear 64 to mesh with the rack 61 to drive the movable seat 62 to move, and the position of the temperature sensor 5 is adjusted under the drive of the movable seat 62.
[0028] More specifically, the adjusting component 7 includes an installation groove 71 opened inside one side of the movable seat 62. An avoidance groove 72 penetrates through the bottom of the installation groove 71, and a sliding groove 73 is opened on its inner side surface. A swing arm 74 is provided in the installation groove 71. Depressions 741 are formed by extending upward on both sides of the top of the swing arm 74, and a guiding portion 742 is provided at the bottom thereof. The bottom of the swing arm 74 is slidably connected to the avoidance groove 711 through a first rotating shaft 75.
[0029] It is worth mentioning that the second motor 77 drives the first rotating shaft 75 to drive the swing arm 74 to swing. The avoidance groove 711 provides a moving space for the bottom of the swing arm 74, facilitating the adjustment of the angle of the swing arm 74 with respect to the temperature sensor 5.
[0030] Generally speaking, a limiting column 743 is fixedly installed below the concave portion 741 of the swing arm 74. The limiting column 743 is slidably connected to the sliding groove 73. A cam 76 is provided in the installation groove 71. The cam 76 has a triangular structure and is rotatably connected to the installation groove 71 through a second rotating shaft 761 at its corner. The cam 76 is rotatably connected to the concave portion 741 and can abut against the inner wall of the concave portion 741.
[0031] It should be noted that due to the fact that the bottom of the swing arm 74 is rotatably connected to the installation groove 71 through the first rotating shaft 75, the concave portion 741 at the top can be driven to move when it is abutted by the cam 76. In this way, the orientations of the concave portion 741 and the guiding portion 742 are opposite to each other;
[0032] Among them, the sliding groove 73 and the limiting column 743 can keep the swing arm 74 stable during movement. And because the cam 76 is rotatably connected to the installation groove 71 through the second rotating shaft 761 at one of its corners, the cam 76 can abut against the concave portion 741 when it rotates, thereby causing the swing arm 74 to swing.
[0033] Finally, a second motor 77 is fixedly installed in the installation groove 71 through a receiving groove. The shaft end of the second motor 77 is fixedly connected to the second rotating shaft 761. The bottom of the movable seat 62 is rotatably connected to a mounting seat 79 through a mounting frame 78. The temperature sensor 5 is fixedly installed at the bottom of the mounting seat 79, and a guiding groove 791 is provided at its top. The guiding portion 742 is movably connected to the guiding groove 791.
[0034] Specifically, when the temperature sensor 5 swings, there is a certain angle between its top and the guiding portion 742. The detection angle of the temperature sensor 5 is adjusted by driving the swing arm 74.
[0035] Working mode; during operation, the first motor 63 drives the driving gear 64 to engage with the rack 61, achieving the effect of driving the movable seat 62 to move, and adjusting the position of the temperature sensor 5 under the drive of the movable seat 62;
[0036] Then, the second motor 77 drives the cam 76 to drive the swing arm 74 to swing, and the swing arm 74 uses the guiding portion 742 to cooperate with the guiding groove 791 to adjust the detection angle of the temperature sensor 5;
[0037] Finally, after detecting that the temperature is not within the normal range, the temperature in the standard curing room 1 is adjusted by the exhaust fan 31 or the blower 32.
[0038] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and the inventive concept of the present invention, makes equivalent substitutions or changes, and should be covered within the protection scope of the present invention.
Claims
1. A temperature detection device based on a concrete curing room, comprising a curing rack (2) placed in the curing room (1), characterized in that: Temperature regulating components (3) are arranged on both sides of the standard curing room (1), and a temperature sensor (5) is arranged on the top of the standard curing room (1) above the curing frame (2) via a slide rail (4), and a driving component (6) is arranged on the slide rail (4), and the driving component (6) is used to drive the temperature sensor (5) to perform mobile monitoring at multiple locations; Wherein, an adjustment component (7) is provided at the bottom of the slide rail (4), and the adjustment component (7) is used to adjust the detection angle of the temperature sensor (5).
2. A temperature detection device based on a concrete standard curing room according to claim 1, characterized in that: The temperature regulating component (3) comprises an exhaust fan (31) and a blower (32); an exhaust slot is provided on the wall of the standard curing room (1), and the exhaust fan (31) is fixedly installed on the exhaust slot via a fixing frame (33); the blower (32) is fixedly installed on the wall on the other side of the standard curing room (1); the output end of the blower (32) is connected to a heating box (34), and the other end of the heating box (34) is connected to an air outlet pipe.
3. A temperature detection device based on a concrete standard curing room according to claim 1, characterized in that: The driving assembly (6) comprises a rack (61) fixedly mounted on the top of the slide rail (4); a movable seat (62) is slidably connected to the bottom of the slide rail (4); a first motor (63) is fixedly mounted on the top of the movable seat (62); a driving gear (64) is fixedly mounted on the shaft end of the first motor (63); and the driving gear (64) meshes and rotates with the rack (61).
4. A temperature detection device based on a concrete standard curing room according to claim 3, characterized in that: The adjustment assembly (7) comprises a mounting groove (71) provided inside one side of the movable seat (62); a avoidance groove (72) is penetrated through the bottom of the mounting groove (71); and a sliding groove (73) is provided on the inner side surface thereof; a swing arm (74) is provided inside the mounting groove (71); both sides of the top of the swing arm (74) extend upward to form a recessed portion (741); and a guide portion (742) is provided at the bottom thereof; and the bottom of the swing arm (74) is slidably connected to the avoidance groove (72) via a first rotating shaft (75).
5. A temperature detection device based on a concrete standard curing room according to claim 4, characterized in that: The swing arm (74) is located below the recessed portion (741) and is fixedly mounted with a limiting column (743). The limiting column (743) is slidably connected in the slide groove (73). A cam (76) is arranged in the mounting groove (71). The cam (76) is in a triangular structure and is located at a corner and is rotatably connected to the mounting groove (71) through a second rotating shaft (761). The cam (76) is rotatably connected in the recessed portion (741) and is capable of contacting the inner wall of the recessed portion (741).
6. A temperature detection device based on a concrete standard curing room according to claim 5, characterized in that: A second motor (77) is fixedly installed in the installation groove (71) via an accommodating groove, and the shaft end of the second motor (77) is fixedly connected to the second rotating shaft (761). The bottom of the movable seat (62) is rotatably connected to a mounting seat (79) via a mounting frame (78), the bottom of the mounting seat (79) is fixedly installed with the temperature sensor (5), and a guide groove (791) is provided on the top of the mounting seat, and the guide portion (742) is movably connected in the guide groove (791).
Citation Information
Patent Citations
Temperature and humidity control system based on concrete standard curing room
CN220381503U